Articles with "composite nanotubes" as a keyword



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Hollow Mesoporous Co3 O4 -CeO2 Composite Nanotubes with Open Ends for Efficient Catalytic CO Oxidation.

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Published in 2019 at "ChemSusChem"

DOI: 10.1002/cssc.201802501

Abstract: Catalytic performance is heavily dependent on how the structures of nanomaterials are designed. Co3 O4 -CeO2 composite nanotubes with open ends and mesoporous structures were fabricated through a facile and environmentally friendly reaction. The mesoporous… read more here.

Keywords: co3 ceo2; nanotubes open; ceo2 composite; composite nanotubes ... See more keywords
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Investigation of hydrogen sensing properties of graphene/Al–SnO2 composite nanotubes derived from electrospinning

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Published in 2018 at "Journal of Industrial and Engineering Chemistry"

DOI: 10.1016/j.jiec.2018.03.001

Abstract: Abstract Graphene-based device/sensor made of multifunctional nanomaterials is an emerging technology due to its huge impact on the engineering materials. Herein, we report the synthesis of pristine SnO2, Al-doped SnO2 (Al–SnO2), and graphene-embedded Al–SnO2 (G–Al–SnO2)… read more here.

Keywords: sno2; sno2 nanotubes; composite nanotubes; sno2 sno2 ... See more keywords
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Mesoporous multi-valence manganese oxides composite nanotubes boosting long-life lithium-ion batteries.

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Published in 2022 at "Dalton transactions"

DOI: 10.1039/d2dt03231g

Abstract: Multi-component nano-oxide composite materials may present special synergistic effects as anode materials for lithium-ion batteries. Mesoporous β-MnO2/Mn3O4 composite nanotubes are built here via controlling the deoxidation process of carbon-coating to induce a partial phase transition… read more here.

Keywords: ion batteries; lithium ion; mno2 mn3o4; composite nanotubes ... See more keywords